调查汽车限滑差速器湿式离合器的故障模式和性能影响

IF 3.1 3区 工程技术 Q2 ENGINEERING, MECHANICAL
T. Schneider, K. Voelkel, H. Pflaum, Karsten Stahl
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引用次数: 0

摘要

在后轴锁止差速器的设计中,通常使用湿式多片离合器来实现所需的高锁止效果。本研究通过一系列有条不紊的实验测试,对这些离合器的自发损坏行为进行了深入研究。研究重点放在三种不同的离合器变体上,每种变体都配备了有机摩擦衬片,即纸基、碳复合材料和碳编织衬片,并对它们各自的损坏类型进行了比较分析。实验分析确定并描述了损坏模式,特别是钢板的屈曲和衬片的脱落。此外,该研究还对这三种摩擦系统在高负载条件下的摩擦和温度行为进行了深入研究和比较。同时进行的温度测量有助于建立基于温度的可靠标准,用于预测和了解损坏行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating Failure Modes and Performance Impacts of Wet Clutches in Automotive Limited Slip Differentials
In the design of rear-axle locking differentials, the desired high locking effect is often achieved using wet multi-plate clutches. This study conducts an in-depth investigation into the spontaneous damage behavior of these clutches through a series of methodical experimental tests. It focuses on three different clutch variants, each equipped with organic friction linings—namely, paper-based, carbon composite, and woven carbon—and undertakes a comparative analysis of their respective damage typologies. The experimental analysis identifies and characterizes patterns of damage, notably the buckling of steel plates and the detachment of lining. Moreover, the study thoroughly examines and compares the friction and temperature behavior under the high load conditions applied to these three friction systems. Concurrent temperature measurements enable the establishment of robust temperature-based criteria for predicting and understanding damage behavior.
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来源期刊
Lubricants
Lubricants Engineering-Mechanical Engineering
CiteScore
3.60
自引率
25.70%
发文量
293
审稿时长
11 weeks
期刊介绍: This journal is dedicated to the field of Tribology and closely related disciplines. This includes the fundamentals of the following topics: -Lubrication, comprising hydrostatics, hydrodynamics, elastohydrodynamics, mixed and boundary regimes of lubrication -Friction, comprising viscous shear, Newtonian and non-Newtonian traction, boundary friction -Wear, including adhesion, abrasion, tribo-corrosion, scuffing and scoring -Cavitation and erosion -Sub-surface stressing, fatigue spalling, pitting, micro-pitting -Contact Mechanics: elasticity, elasto-plasticity, adhesion, viscoelasticity, poroelasticity, coatings and solid lubricants, layered bonded and unbonded solids -Surface Science: topography, tribo-film formation, lubricant–surface combination, surface texturing, micro-hydrodynamics, micro-elastohydrodynamics -Rheology: Newtonian, non-Newtonian fluids, dilatants, pseudo-plastics, thixotropy, shear thinning -Physical chemistry of lubricants, boundary active species, adsorption, bonding
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